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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Influence of the viscoelectric effects on the electrokinetic power generation controlled by an osmotic semi-membrane placed on a parallel-plate microchannel
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Influence of the viscoelectric effects on the electrokinetic power generation controlled by an osmotic semi-membrane placed on a parallel-plate microchannel

机译:粘磁效应对平行板微通道渗透半膜控制电动发电的影响

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摘要

In the present work, we develop a theoretical study for predicting the streaming potential and, therefore, the electric power generation in a system composed of a semi-permeable osmotic membrane inserted in a slit microchannel. Both physical systems are communicated through the forced microcirculation of an electrolyte employing the use of a saline gradient, which is established between the external faces of the membrane, creating the suction force needed to induce a hydrodynamic flow. In this manner, we externally impose a uniform volumetric flow rate to promote simultaneous hydrodynamic and electrokinetic fields, replacing the usual external pressure gradient with an equivalent osmotic pressure force. The viscoelectric effects of the electrolyte solution are included in the present analysis. The resulting non-linear governing equations for the motion are written in dimensionless form and permit us to derive an integro-differential equation for the velocity field, which is solved by an iterative method. With the aid of these previous results, the electric energy, in terms of an electrokinetic streaming potential and the streaming current, is generated for this combined system. This proposed electric power generation technique converts the energy of a saline gradient into electrical energy, avoiding the mechanical use of an external pressure gradient.
机译:在目前的工作中,我们开展了一项理论研究,用于预测由插入狭缝微通道的半透膜组成的系统中的流动电位,从而预测发电量。这两个物理系统都是通过电解质的强制微循环进行沟通的,电解质利用了在膜的外表面之间建立的盐水梯度,从而产生诱导流体动力流动所需的吸力。通过这种方式,我们在外部施加均匀的体积流量,以促进同时的流体动力场和电动场,用等效的渗透压力代替通常的外部压力梯度。本分析包括电解质溶液的粘电效应。由此产生的运动非线性控制方程以无量纲形式编写,并允许我们推导速度场的积分微分方程,该方程通过迭代方法求解。借助于这些先前的结果,根据电动流电位和流电流,为该组合系统生成电能。这种提出的发电技术将盐分梯度的能量转化为电能,避免了机械使用外部压力梯度。

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